Development of a module for cell culture based on a decellularized vascular tissue scaffold
Decellularized tissues and organs have been intensively studied in order to use them as a scaffold for proliferation of recipient cells in tissue engineering/regenerative medicine applications. We established a fast and effective method for tissue decellularization by way of shaking a tissue in a de...
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iium-440742015-08-11T00:42:07Z http://irep.iium.edu.my/44074/ Development of a module for cell culture based on a decellularized vascular tissue scaffold Ataru , MURAHARA Akimitsu , WAKIDA Yu , MIYAKE Shoichiro , TATEISHI Takahiro , HIRAYAMA Noor Azmi, Azran Azhim Kazuaki , MURAMATSU Masato , TANAKA Osamu , ENDO Kozo , MIYAZAKI Hirotaka , MATSUO Nariyoshi , SHINOMIYA Yuji , MORIMOTO TP248.13 Biotechnology Decellularized tissues and organs have been intensively studied in order to use them as a scaffold for proliferation of recipient cells in tissue engineering/regenerative medicine applications. We established a fast and effective method for tissue decellularization by way of shaking a tissue in a detergent at 300 rpm. In addition, we developed a ring-clamp for fixation of decellularized tissue and created a scaffold module for cell culture by the combination of the ring-clamp and decellularized tissue. The module can be placed in a well of a commercially available 24-well plate. Smooth muscle cells that were seeded on a scaffold module consisting of a decellularized vessel and the ring-clamp showed proliferation with a spindle shape similar to that of vascular smooth muscle cells in the biological body. Vascular endothelial cells that adhered to the scaffold module showed enhanced susceptibility to histamine-induced Ca2+ influx. J-STAGE 2011 Article PeerReviewed application/pdf en http://irep.iium.edu.my/44074/1/Development_of_a_Module_for_Cell_Culture_Based_on_a_Decellularized_Vascular_Tissue_Scaffold.pdf application/pdf en http://irep.iium.edu.my/44074/4/Development_of_a_Module_for_Cell_Culture_Based_on_a_Decellularized_Vascular_Tissue_Scaffold.pdf Ataru , MURAHARA and Akimitsu , WAKIDA and Yu , MIYAKE and Shoichiro , TATEISHI and Takahiro , HIRAYAMA and Noor Azmi, Azran Azhim and Kazuaki , MURAMATSU and Masato , TANAKA and Osamu , ENDO and Kozo , MIYAZAKI and Hirotaka , MATSUO and Nariyoshi , SHINOMIYA and Yuji , MORIMOTO (2011) Development of a module for cell culture based on a decellularized vascular tissue scaffold. Transactions of Japanese Society for Medical and Biological Engineering , 49 (3). pp. 508-515. ISSN 1881-4379 https://www.jstage.jst.go.jp/article/jsmbe/49/3/49_3_508/_article http://doi.org/10.11239/jsmbe.49.508 |
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TP248.13 Biotechnology Ataru , MURAHARA Akimitsu , WAKIDA Yu , MIYAKE Shoichiro , TATEISHI Takahiro , HIRAYAMA Noor Azmi, Azran Azhim Kazuaki , MURAMATSU Masato , TANAKA Osamu , ENDO Kozo , MIYAZAKI Hirotaka , MATSUO Nariyoshi , SHINOMIYA Yuji , MORIMOTO Development of a module for cell culture based on a decellularized vascular tissue scaffold |
description |
Decellularized tissues and organs have been intensively studied in order to use them as a scaffold for proliferation of recipient cells in tissue engineering/regenerative medicine applications. We established a fast and effective method for tissue decellularization by way of shaking a tissue in a detergent at 300 rpm. In addition, we developed a ring-clamp for fixation of decellularized tissue and created a scaffold module for cell culture by the combination of the ring-clamp and decellularized tissue. The module can be placed in a well of a commercially available 24-well plate. Smooth muscle cells that were seeded on a scaffold module consisting of a decellularized vessel and the ring-clamp showed proliferation with a spindle shape similar to that of vascular smooth muscle cells in the biological body. Vascular endothelial cells that adhered to the scaffold module showed enhanced susceptibility to histamine-induced Ca2+ influx. |
format |
Article |
author |
Ataru , MURAHARA Akimitsu , WAKIDA Yu , MIYAKE Shoichiro , TATEISHI Takahiro , HIRAYAMA Noor Azmi, Azran Azhim Kazuaki , MURAMATSU Masato , TANAKA Osamu , ENDO Kozo , MIYAZAKI Hirotaka , MATSUO Nariyoshi , SHINOMIYA Yuji , MORIMOTO |
author_facet |
Ataru , MURAHARA Akimitsu , WAKIDA Yu , MIYAKE Shoichiro , TATEISHI Takahiro , HIRAYAMA Noor Azmi, Azran Azhim Kazuaki , MURAMATSU Masato , TANAKA Osamu , ENDO Kozo , MIYAZAKI Hirotaka , MATSUO Nariyoshi , SHINOMIYA Yuji , MORIMOTO |
author_sort |
Ataru , MURAHARA |
title |
Development of a module for cell culture based on a decellularized vascular tissue scaffold |
title_short |
Development of a module for cell culture based on a decellularized vascular tissue scaffold |
title_full |
Development of a module for cell culture based on a decellularized vascular tissue scaffold |
title_fullStr |
Development of a module for cell culture based on a decellularized vascular tissue scaffold |
title_full_unstemmed |
Development of a module for cell culture based on a decellularized vascular tissue scaffold |
title_sort |
development of a module for cell culture based on a decellularized vascular tissue scaffold |
publisher |
J-STAGE |
publishDate |
2011 |
url |
http://irep.iium.edu.my/44074/ http://irep.iium.edu.my/44074/ http://irep.iium.edu.my/44074/ http://irep.iium.edu.my/44074/1/Development_of_a_Module_for_Cell_Culture_Based_on_a_Decellularized_Vascular_Tissue_Scaffold.pdf http://irep.iium.edu.my/44074/4/Development_of_a_Module_for_Cell_Culture_Based_on_a_Decellularized_Vascular_Tissue_Scaffold.pdf |
first_indexed |
2023-09-18T21:02:42Z |
last_indexed |
2023-09-18T21:02:42Z |
_version_ |
1777410729390899200 |